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Steady state thermoelastic analysis of 3D solids with fiber inclusions by boundary element method

机译:含纤维夹杂物的3D固体稳态热边界分析

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摘要

In this work, a boundary element based analysis methodology for the steady state uncoupled thermoelastic analysis of fiber reinforced three-dimensional solids is presented. For efficient analysis and modeling, the cylindrical shaped fibers are idealized by a system of curvilinear line elements with a prescribed diameter. The variations in the displacement, traction, temperature and flux fields in the circumferential direction are represented in terms of a trigonometric shape function together with a linear or quadratic variation in the longitudinal direction. This facilitates semi-analytical integration around the fiber which reduces the computational task significantly. The numerical accuracy of the proposed method of analysis is verified and some examples of thermoelastic analysis of fiber-reinforced solids are presented.
机译:在这项工作中,提出了一种基于边界元的纤维增强三维固体稳态非耦合热弹性分析方法。为了进行有效的分析和建模,可通过具有预定直径的曲线线元素系统来理想化圆柱形纤维。圆周方向上的位移,牵引力,温度和通量场的变化用三角形状函数表示,而纵向​​方向上则是线性或二次变化。这促进了光纤周围的半分析集成,从而显着减少了计算任务。验证了所提出的分析方法的数值准确性,并给出了纤维增强固体的热弹性分析的一些例子。

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